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The vacuolar calcium sensors CBL2 and CBL3 affect seed size and embryonic development in Arabidopsis thaliana

机译:液泡钙传感器CBL2和CBL3影响拟南芥的种子大小和胚胎发育

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Stimulus-specific calcium (Ca2+) signals have crucial functions in developmental processes in many organisms, and are deciphered by various Ca2+-binding proteins. In Arabidopsis thaliana, a signaling network consisting of calcineurin B-like (CBL) protein calcium sensors and CBL-interacting protein kinases (CIPKs) has been shown to fulfil pivotal functions at the plasma membrane in regulating ion fluxes and abiotic stress responses. However, the role of tonoplast-localized CBL proteins and especially their function in regulating developmental programs remains largely unknown. In this study, we analyzed single and double mutants of the closely related tonoplast-localized calcium sensors CBL2 and CBL3, which show either reduction of function (rf) or complete loss of function (lf). While single cbl2 or cbl3 mutants did not display discernable phenotypes, cbl2/cbl3 mutants exhibited defects in vegetative growth and were severely impaired in seed development and morphology. Seeds of the cbl2/3rf mutant were smaller in size and exhibited reduced weight and fatty acid content compared to wild-type, but accumulation of sucrose was not altered. Moreover, accumulation of inositol hexakisphosphate (InsP(6)), the major storage form of phosphorus in seeds, was significantly reduced in mutant seeds. In addition, complete loss of CBL2 and CBL3 function in cbl2/3lf resulted in a high frequency of severe defects in embryonic development. Together, our findings reveal a crucial function of Ca2+-controlled processes at the vacuolar membrane as determinants of seed yield and size, and demonstrate the importance of vacuolar CBL calcium sensors for plant embryogenesis.
机译:刺激物特异性钙(Ca2 +)信号在许多生物体的发育过程中具有至关重要的功能,并被各种Ca2 +结合蛋白破译。在拟南芥中,由钙调磷酸酶B样(CBL)蛋白钙传感器和CBL相互作用蛋白激酶(CIPKs)组成的信号网络已显示出在质膜上调节离子通量和非生物胁迫响应的关键功能。但是,液泡膜定位的CBL蛋白的作用,尤其是它们在调控发育程序中的功能,在很大程度上尚不清楚。在这项研究中,我们分析了与胞质体定位密切相关的钙传感器CBL2和CBL3的单突变体和双突变体,它们显示功能降低(rf)或功能完全丧失(lf)。虽然单个cbl2或cbl3突变体没有显示可辨别的表型,但cbl2 / cbl3突变体在营养生长上表现出缺陷,并且在种子发育和形态上受到严重损害。与野生型相比,cbl2 / 3rf突变体的种子尺寸较小,重量和脂肪酸含量降低,但是蔗糖的积累没有改变。此外,在突变体种子中,肌醇六磷酸酯(InsP(6))(磷在种子中的主要存储形式)的积累显着减少。此外,cbl2 / 3lf中CBL2和CBL3功能的完全丧失导致胚胎发育中出现严重缺陷的频率很高。总之,我们的发现揭示了液泡膜上Ca2 +控制过程的关键功能,决定着种子产量和大小,并证明液泡CBL钙传感器对于植物胚胎发生的重要性。

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