Screening tolerance to phosphorus starvation and haplotype analysis using phosphorus uptake 1 (Pup1) QTL linked markers in rice genotypes

被引:0
|
作者
V. Nirubana
C. Vanniarajan
N. Aananthi
J. Ramalingam
机构
[1] Agricultural College and Research Institute,Department of Plant Breeding and Genetics
[2] Tamil Nadu Agricultural University,Department of Plant Breeding and Genetics
[3] Agricultural College and Research Institute,Department of Biotechnology
[4] Tamil Nadu Agricultural University,undefined
[5] Agricultural College and Research Institute,undefined
[6] Tamil Nadu Agricultural University,undefined
关键词
Phosphorus deficiency tolerance; Hydroponics; Markers; Rice;
D O I
暂无
中图分类号
学科分类号
摘要
Phosphorus (P) deficiency tolerance is a pivotal trait for plant growth and development. Most of the commercial modern cultivars lack this trait and reported it as a very serious problem limiting crop productivity. This trait is advantageous if present in modern high yielding varieties as it increases the yield under the phosphorus-deficient soil conditions. With the importance of phosphorus deficiency tolerance, the present investigation was carried out with an objective to screen for tolerance to phosphorus deficiency using solution culture and phosphorus uptake 1 (Pup1) locus linked markers in 30 diverse rice genotypes. A wide range of varied responses to P deficiency in rice genotypes for all the traits were observed. Root length and enzyme activity showed increased mean performance under the − P condition when compared to + P condition. Medium to high heritability estimates were obtained for most of the traits. Correlation analysis showed that the traits: root P content, fresh shoot weight, dry shoot weight, and shoot length showed highly significant correlations with each other under − P conditions. Based on the hydroponics and molecular screening, three genotypes viz., ADT (R) 48, Improved Pusa Basmati 1 and UPLRI 5 were classified as tolerant for its response to P deficiency as they possessed significant increase in desirable root and shoot traits, increased acid phosphatase enzyme and these genotypes also possessed the Pup1 allele for all the five markers. The selected genotypes may be useful for the exploration of novel genes conferring phosphorus deficiency tolerance and used as donor parents in the breeding programs. Absence of this allele in the rice genotypes viz., drought tolerant (Anna (R) 4) and submergence tolerant (CR 1009 Sub 1) may warrant the development of multiple abiotic stress tolerance cultivars for upland and submergence cropping systems in future rice breeding program.
引用
收藏
页码:2355 / 2369
页数:14
相关论文
共 44 条
  • [21] Pup1 QTL-Mediated Tissue-Specific Differential Expression of Transcription Factors Help Mitigate Deleterious Effects of Phosphorus-Starvation in Rice (Oryza sativa L.)
    Seem, Karishma
    Selvan, Tamil
    Kaur, Simardeep
    Kumar, Suresh
    Mohapatra, Trilochan
    PLANT MOLECULAR BIOLOGY REPORTER, 2024,
  • [22] Identification of Pup1 QTL linked DNA marker haplotypes for molecular breeding of phosphorous deficiency tolerant rice varieties
    Aluwihare, Y. C.
    Chamikara, M. D. M.
    Dissanayake, D. R. R. P.
    Karunarathne, S., I
    Ananda, G. K. S.
    Kannangara, S. K.
    Madhukalpani, O. V. S.
    Sirisena, D. N.
    Samarasinghe, W. L. G.
    Sooriyapathirana, S. D. S. S.
    JOURNAL OF THE NATIONAL SCIENCE FOUNDATION OF SRI LANKA, 2018, 46 (04): : 495 - 504
  • [23] Stacking of Pup1 QTL for low soil phosphorus tolerance and bacterial blight resistance genes in the background of APMS6B, the maintainer line of rice hybrid DRRH-3
    N. Madhusudan
    P. Beulah
    V. Jaldhani
    P. Nagaraju
    Y. Manasa
    R. M. Sundaram
    G. S. Laha
    M. S. Anantha
    Kalyani M. Barbadikar
    C. Gireesh
    A. S. HariPrasad
    M. Sheshu Madhav
    R. Gobinath
    A. Yugandhar
    K. B. Kemparaju
    C. N. Neeraja
    P. Brajendra
    M. D. Tuti
    R. Mahender Kumar
    K. V. Radha Krishna
    P. Senguttuvel
    Euphytica, 2022, 218
  • [24] Comparative sequence analyses of the major quantitative trait locus phosphorus uptake 1 (Pup1) reveal a complex genetic structure
    Heuer, Sigrid
    Lu, Xiaochun
    Chin, Joong Hyoun
    Tanaka, Juan Pariasca
    Kanamori, Hiroyuki
    Matsumoto, Takashi
    De Leon, Teresa
    Ulat, Victor Jun
    Ismail, Abdelbagi M.
    Yano, Masahiro
    Wissuwa, Matthias
    PLANT BIOTECHNOLOGY JOURNAL, 2009, 7 (05) : 456 - 471
  • [25] Stacking of Pup1 QTL for low soil phosphorus tolerance and bacterial blight resistance genes in the background of APMS6B, the maintainer line of rice hybrid DRRH-3
    Madhusudan, N.
    Beulah, P.
    Jaldhani, V
    Nagaraju, P.
    Manasa, Y.
    Sundaram, R. M.
    Laha, G. S.
    Anantha, M. S.
    Barbadikar, Kalyani M.
    Gireesh, C.
    HariPrasad, A. S.
    Madhav, M. Sheshu
    Gobinath, R.
    Yugandhar, A.
    Kemparaju, K. B.
    Neeraja, C. N.
    Brajendra, P.
    Tuti, M. D.
    Kumar, R. Mahender
    Krishna, K. V. Radha
    Senguttuvel, P.
    EUPHYTICA, 2022, 218 (04)
  • [26] Assessing the Effect of a Major Quantitative Locus for Phosphorus Uptake (Pup1) in Rice (O. sativa L.) Grown under a Temperate Region
    Navea, Ian Paul
    Han, Jae-Hyuk
    Shin, Na-Hyun
    Lee, O. New
    Kwon, Soon-Wook
    Choi, Il-Ryong
    Chin, Joong Hyoun
    AGRICULTURE-BASEL, 2022, 12 (12):
  • [27] Early Vigor of a Pyramiding Line Containing Two Quantitative Trait Loci, Phosphorus Uptake 1 (Pup1) and Anaerobic Germination 1 (AG1) in Rice (O. Sativa L.)
    Shin, Na-Hyun
    Han, Jae-Hyuk
    Jang, Su
    Song, Kihwan
    Koh, Hee-Jong
    Lee, Jong-Hee
    Yoo, Soocheul
    Chin, Joong Hyoun
    AGRICULTURE-BASEL, 2020, 10 (10): : 1 - 11
  • [28] Physiological and molecular investigations on a high-yielding variety and near-isogenic line of rice under continuous phosphorus stress reveal major regulatory function of Pup1 QTL
    Selvan, Tamil S.
    Seem, Karishma
    Pandey, Renu
    Pandey, Rakesh
    Vinod, K. K.
    Kumar, Suresh
    Mohapatra, Trilochan
    PLANT PHYSIOLOGY AND BIOCHEMISTRY, 2025, 221
  • [29] Novel Alleles of Phosphorus-Starvation Tolerance 1 Gene (PSTOL1) from Oryza rufipogon Confers High Phosphorus Uptake Efficiency
    Neelam, Kumari
    Thakur, Shiwali
    Neha
    Yadav, Inderjit S.
    Kumar, Kishor
    Dhaliwal, Salwinder S.
    Singh, Kuldeep
    FRONTIERS IN PLANT SCIENCE, 2017, 8
  • [30] Exploring phosphorus starvation tolerance in as (Oryza sativa L.) rice: An analysis of stress tolerance attributes and understanding the effect of PSTOL1 gene
    Sar, Puranjoy
    Aiswarya, Vilangapurathu S.
    Basha, Firos T. M.
    Deo, Rachna
    Verma, Bibhash Chandra
    Bhaduri, Debarati
    Chakraborty, Koushik
    Ngangkham, Umakanta
    Banerjee, Amrita
    Kumar, Jitendra
    Mandal, Nimai Prasad
    Roy, Somnath
    PLANT BREEDING, 2024, 143 (04) : 413 - 422